Skip to content
Extra Form
Abstract For the safe navigation of USVs (Unmanned Surface Vehicles), it is crucial that they autonomously recognize maritime obstacles and accurately detect surroundings. To achieve this, USVs typically utilize various sensors such as RADAR (RAdio Detection And Ranging) and cameras. While RADAR has certain limitations, including lower resolution for object classification and reduced accuracy in lateral distance estimation compared to cameras, it offers important advantages such as long-range detection, relative speed measurement, and reliable functionality regardless of lighting conditions. In contrast, cameras provide high-resolution images but face challenges in low-light environments and provide substantial amounts of data that require extensive processing. Since each sensor has its characteristics, such as detection range, frequency, and error distribution, achieving consistent and accurate obstacle tracking with a single sensor is challenging. Therefore, it is necessary to integrate multiple sensors, combining RADAR’s robustness under various weather conditions with the high-resolution capabilities of cameras. In this study, a method for robust tracking and fusion was proposed to track the trajectory, COG (Course Over Ground), and SOG (Speed Over Ground) of maritime obstacles around the USV, utilizing data collected from multiple sensors. Specifically, three different sensor fusion algorithms—low-level fusion, middle-level fusion, and high-level fusion—were implemented within a tracking system. Each algorithm integrated sensor data at various levels. Low-level fusion combined raw data to minimize information loss, while middle-level fusion processes extracted features to enhance object recognition. High-level fusion integrated the outputs from various sensors to improve decision-making. Each fusion approach presented unique advantages and limitations depending on the specific situations, making it essential to choose the appropriate approach based on the application context for optimal performance. The effectiveness of these methods was evaluated using detection data obtained from RADAR and cameras in real-world experiments, assessing their performance in diverse conditions. The fusion results were subsequently compared with ground truth data. The analysis confirmed that integrating data from multiple sensors significantly improved the accuracy of obstacle tracking around the USV, thereby enhancing the overall safety and reliability of autonomous navigation.
Publication Date 2025-06-03

Yun-Sik Kim, Myung-Il Roh, Ha-Yun Kim, In-Chang Yeo, Nam-Sun Son, "A Method for Robust Tracking and Fusion of Maritime Obstacles Using Multiple Sensor Data", Proceedings of ISOPE (International Society of Offshore and Polar Engineers) 2025, Goyang, Korea, pp. 1849-1854, 2025.06.01-06


List of Articles
번호 분류 제목 Publication Date
154 International Conference Do-Hyeok Ahn, Myung-Il Roh, In-Chang Yeo, Hye-Won Lee, Seung-Ho Ham, "A Control Method Based on Safe Reinforcement Learning for Cranes in Shipyards", Proceedings of OMAE 2026, Tokyo, Japan, 2026.06.07-12 file 2026-06-10
153 International Conference Dong-Woo Kim, Myung-Il Roh et al., "A Method for Improving Sloshing Assessment in Membrane-Type Cargo Tanks Considering Strucutral Nonlinearity", Proceedings of OMAE 2025, Vancouver, Canada, 2025.06.22-27 file 2025-06-23
152 International Conference Ha-Yun Kim, Myung-Il Roh, Do-Hyeok Ahn, Min-Chul Kong, In-Chang Yeo, Seong-Won Choi, "A Method for Ship Modeling in a Virtual Environment for SILS-Based Collision Avoidance Simulation", Proceedings of 11th PAAMES and AMEC, Singapore, 2025.12.10-12 file 2025-12-11
151 International Conference In-Chang Yeo, Myung-Il Roh, Jin-Hyeok Kim, In-Su Han, Dong-Woo Kim,"A Method for Optimizing Pump Tower Design in LNG Tanks Considering Structural Safety", Proceedings of PRADS 2025, Ann Arbor, USA, 2025.10.19-23 file 2025-10-23
150 International Conference In-Su Han, Myung-Il Roh, Min-Chul Kong, "A Generative AI-based Q&A System for Design Regulations", Proceedings of PRADS 2025, Ann Arbor, USA, 2025.10.19-23 file 2025-10-20
149 International Conference Seong-Won Choi, Myung-Il Roh, In-Chang Yeo, "A Method for Collision Avoidance of an Autonomous Ship in Dynamic Environments", Proceedings of ISOPE 2025, Goyang, Korea, 2025.06.01-06 file 2025-06-05
148 International Conference Do-Hyeok Ahn, Myung-Il Roh, In-Chang Yeo, Do-Hyun Chun, "A Method for Automatic Control of the Block Lifting by an Offshore Floating Crane Based on Deep Reinforcement Learning", Proceedings of ISOPE 2025, Goyang, Korea, 2025.06.01-06 file 2025-06-02
» International Conference Yun-Sik Kim, Myung-Il Roh, Ha-Yun Kim, In-Chang Yeo, Nam-Sun Son, "A Method for Robust Tracking and Fusion of Maritime Obstacles Using Multiple Sensor Data", Proceedings of ISOPE 2025, Goyang, Korea, 2025.06.01-06 file 2025-06-03
146 International Conference Min-Chul Kong, Myung-Il Roh, In-Su Han, Seong-Won Choi, Mijin Kim, Jeoungyoun Kim, Inseok Lee, "A Method for Ship Piping Design Using Past Data and Expert Knowledge", Proceedings of OMAE 2025, Vancouver, Canada, 2025.06.22-27 file 2025-06-25
145 International Conference Min-Chul Kong, Myung-Il Roh, In-Su Han, Mijin Kim, Jeoungyoun Kim, "A Method for Pipe Auto-routing Using Graph and Octree Structure", Proceedings of G-NAOE 2024, Southampton, UK, 2024.11.05-09 file 2024-11-05
Board Pagination Prev 1 2 3 4 5 6 7 8 9 10 ... 17 Next
/ 17

Powered by Xpress Engine / Designed by Sketchbook

sketchbook5, 스케치북5

sketchbook5, 스케치북5

나눔글꼴 설치 안내


이 PC에는 나눔글꼴이 설치되어 있지 않습니다.

이 사이트를 나눔글꼴로 보기 위해서는
나눔글꼴을 설치해야 합니다.

설치 취소